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玉米幼苗对长期缺钾的转录和代谢响应

Transcriptional and Metabolic Responses of Maize Shoots to Long-Term Potassium Deficiency.

作者信息

Xiong Wangdan, Wang Yujian, Guo Yongzhen, Tang Wei, Zhao Yiran, Yang Guofeng, Pei Yuhe, Chen Jingtang, Song Xiyun, Sun Juan

机构信息

Grassland Agri-husbandry Research Center, College of Grassland Science, Qingdao Agricultural University, Qingdao, China.

College of Agriculture, Qingdao Agricultural University, Qingdao, China.

出版信息

Front Plant Sci. 2022 Jun 23;13:922581. doi: 10.3389/fpls.2022.922581. eCollection 2022.

Abstract

Potassium is important for plant growth and crop yield. However, the effects of potassium (K) deficiency on silage maize biomass yield and how maize shoot feedback mechanisms of K deficiency regulate whole plant growth remains largely unknown. Here, the study aims to explore the maize growth, transcriptional and metabolic responses of shoots to long-term potassium deficiency. Under the K insufficiency condition, the biomass yield of silage maize decreased. The transcriptome data showed that there were 922 and 1,107 differential expression genes in DH605 and Z58, respectively. In the two varieties, 390 differently expressed overlapping genes were similarly regulated. These genes were considered the fundamental responses to K deficiency in maize shoots. Many stress-induced genes are involved in transport, primary and secondary metabolism, regulation, and other processes, which are involved in K acquisition and homeostasis. Metabolic profiles indicated that most amino acids, phenolic acids, organic acids, and alkaloids were accumulated in shoots under K deficiency conditions and part of the sugars and sugar alcohols also increased. It revealed that putrescine and putrescine derivatives were specifically accumulated under the K deficiency condition, which may play a role in the feedback regulation of shoot growth. These results confirmed the importance of K on silage maize production and provided a deeper insight into the responses to K deficiency in maize shoots.

摘要

钾对植物生长和作物产量至关重要。然而,缺钾对青贮玉米生物量产量的影响以及玉米地上部缺钾反馈机制如何调节整株植物生长在很大程度上仍不清楚。在此,本研究旨在探究玉米地上部对长期缺钾的生长、转录和代谢响应。在钾供应不足的条件下,青贮玉米的生物量产量下降。转录组数据显示,DH605和Z58中分别有922个和1107个差异表达基因。在这两个品种中,390个差异表达的重叠基因受到相似的调控。这些基因被认为是玉米地上部对缺钾的基本响应。许多胁迫诱导基因参与运输、初生和次生代谢、调控及其他过程,这些过程涉及钾的获取和体内平衡。代谢谱表明,在缺钾条件下,地上部积累了大多数氨基酸、酚酸、有机酸和生物碱,部分糖类和糖醇也有所增加。结果表明,腐胺及其衍生物在缺钾条件下特异性积累,这可能在地上部生长的反馈调节中发挥作用。这些结果证实了钾对青贮玉米生产的重要性,并为深入了解玉米地上部对缺钾的响应提供了依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6dfd/9260415/c7d3adc8ac79/fpls-13-922581-g0001.jpg

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